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快速适应快速变化的世界:昆虫基因组学的新见解。

Rapid adaptation in a fast-changing world: Emerging insights from insect genomics.

机构信息

Department of Zoology, University of Otago, Dunedin, New Zealand.

出版信息

Glob Chang Biol. 2023 Feb;29(4):943-954. doi: 10.1111/gcb.16512. Epub 2022 Nov 20.

Abstract

Many researchers have questioned the ability of biota to adapt to rapid anthropogenic environmental shifts. Here, we synthesize emerging genomic evidence for rapid insect evolution in response to human pressure. These new data reveal diverse genomic mechanisms (single locus, polygenic, structural shifts; introgression) underpinning rapid adaptive responses to a variety of anthropogenic selective pressures. While the effects of some human impacts (e.g. pollution; pesticides) have been previously documented, here we highlight startling new evidence for rapid evolutionary responses to additional anthropogenic processes such as deforestation. These recent findings indicate that diverse insect assemblages can indeed respond dynamically to major anthropogenic evolutionary challenges. Our synthesis also emphasizes the critical roles of genomic architecture, standing variation and gene flow in maintaining future adaptive potential. Broadly, it is clear that genomic approaches are essential for predicting, monitoring and responding to ongoing anthropogenic biodiversity shifts in a fast-changing world.

摘要

许多研究人员质疑生物群能否适应快速的人为环境变化。在这里,我们综合了新兴的基因组证据,证明昆虫对人类压力的快速进化。这些新数据揭示了多种基因组机制(单一基因座、多基因、结构变化;基因渗入),这些机制为应对各种人为选择压力的快速适应性反应提供了基础。虽然以前已经记录了一些人类影响(例如污染;杀虫剂)的影响,但在这里,我们强调了令人惊讶的新证据,证明了对诸如森林砍伐等额外人为过程的快速进化反应。这些最近的发现表明,不同的昆虫组合确实可以对主要的人为进化挑战做出动态反应。我们的综合研究还强调了基因组结构、现有变异和基因流在维持未来适应潜力方面的关键作用。总的来说,很明显,基因组方法对于预测、监测和应对快速变化世界中正在发生的人为生物多样性变化至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b26/10100130/4a003278b481/GCB-29-943-g004.jpg

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